Kim Jinmahn, Yeon Jihye, Choi Seong-Kyoon, Huh Yang Hoon, Fang Zi, Park Seo Jin, Kim Myoung Ok, Ryoo Zae Young, Kang Kyeongjin, Kweon Hee-Seok, Jeon Won Bae, Li Chris, Kim Kyuhyung
Department of Brain and Cognitive Sciences, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu, Korea.
Laboratory of Biochemistry and Cellular Engineering, Division of NanoBio Technology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu, Korea.
PLoS Genet. 2015 Aug 25;11(8):e1005480. doi: 10.1371/journal.pgen.1005480. eCollection 2015 Aug.
The expression of specific transcription factors determines the differentiated features of postmitotic neurons. However, the mechanism by which specific molecules determine neuronal cell fate and the extent to which the functions of transcription factors are conserved in evolution are not fully understood. In C. elegans, the cholinergic and peptidergic SMB sensory/inter/motor neurons innervate muscle quadrants in the head and control the amplitude of sinusoidal movement. Here we show that the LIM homeobox protein LIM-4 determines neuronal characteristics of the SMB neurons. In lim-4 mutant animals, expression of terminal differentiation genes, such as the cholinergic gene battery and the flp-12 neuropeptide gene, is completely abolished and thus the function of the SMB neurons is compromised. LIM-4 activity promotes SMB identity by directly regulating the expression of the SMB marker genes via a distinct cis-regulatory motif. Two human LIM-4 orthologs, LHX6 and LHX8, functionally substitute for LIM-4 in C. elegans. Furthermore, C. elegans LIM-4 or human LHX6 can induce cholinergic and peptidergic characteristics in the human neuronal cell lines. Our results indicate that the evolutionarily conserved LIM-4/LHX6 homeodomain proteins function in generation of precise neuronal subtypes.
特定转录因子的表达决定了有丝分裂后神经元的分化特征。然而,特定分子决定神经元细胞命运的机制以及转录因子功能在进化过程中的保守程度尚未完全明确。在秀丽隐杆线虫中,胆碱能和肽能的SMB感觉/中间/运动神经元支配头部的肌肉象限并控制正弦运动的幅度。在此我们表明,LIM同源框蛋白LIM-4决定了SMB神经元的神经元特征。在lim-4突变动物中,终末分化基因的表达,如胆碱能基因簇和flp-12神经肽基因,被完全消除,因此SMB神经元的功能受损。LIM-4活性通过一个独特的顺式调控基序直接调节SMB标记基因的表达来促进SMB身份的形成。两个人类LIM-4直系同源基因,LHX6和LHX8,在功能上可替代秀丽隐杆线虫中的LIM-4。此外,秀丽隐杆线虫的LIM-4或人类LHX6可在人类神经元细胞系中诱导胆碱能和肽能特征。我们的结果表明,进化上保守的LIM-4/LHX6同源结构域蛋白在精确神经元亚型的产生中发挥作用。